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Defect Prediction During Forming and Consolidation of Composite Materials Using Finite Element Analysis

机译:有限元分析法预测复合材料成形固结过程中的缺陷

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Forming of composite laminates is an effective manufacturing method that improves repeatability, enables tailoring of material orientations, and reduces time and cost when compared to more labour-intensive alternatives. However, this process is often prone to defects - leading to delays and ultimately scrapping of expensive parts - that are traditionally mitigated through resource intensive trial and error approaches. The risks of the forming process can be mitigated by using process simulation as a tool to develop a robust process window. In order to successfully model the forming of composite materials, the relevant deformation mechanisms and material attributes, shown in Figure 1, need to be considered.This paper presents a finite element simulation framework to predict the occurrence of defects in the forming and consolidation steps of the manufacturing process of fibre reinforced composites. The modelling approach presents a novel discretization strategy for each ply with a superposition of solid and shell elements. This solution uses a coupled pressure-displacement implicit analysis procedure that allows for the simulation of resin flow and is well suited to simulate autoclave consolidation and simple forming cases where through-thickness deformations are important.Simulation results show good agreement with experimental forming trials and other work found in literature in terms of deformation mechanisms and defects observed.
机译:与更多劳动密集型替代产品相比,复合材料层压板的成型是一种有效的制造方法,可提高重复性,调整材料方向并减少时间和成本。但是,此过程通常容易出现缺陷-导致延迟并最终报废昂贵的零件-传统上可以通过资源密集的试验和错误方法来减轻这种缺陷。可以通过使用过程模拟作为开发可靠的过程窗口的工具来减轻成型过程的风险。为了成功地对复合材料的成型进行建模,需要考虑如图1所示的相关变形机制和材料属性。 本文提出了一个有限元模拟框架,以预测纤维增强复合材料制造过程中成形和固结步骤中缺陷的发生。建模方法为每个层提供了一种新颖的离散化策略,将固体和壳单元叠加在一起。该解决方案使用耦合的压力-位移隐式分析程序,该程序可以模拟树脂流动,非常适合于模拟高压釜固结和简单的成型情况(其中整个厚度变形很重要)。 模拟结果表明,在变形机理和观察到的缺陷方面,与实验成型试验和文献中的其他工作具有很好的一致性。

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